Patents by Inventor Stephen R. Forrest

Stephen R. Forrest has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 6602540
    Abstract: An organic light emitting device (OLED) is disclosed for which the hole transporting layer, the electron transporting layer and/or the emissive layer, if separately present, is comprised of a non-polymeric material. A method for preparing such OLED's using vacuum deposition techniques is further disclosed.
    Type: Grant
    Filed: October 27, 1997
    Date of Patent: August 5, 2003
    Assignee: The Trustees of Princeton University
    Inventors: Gong Gu, Paul Burrows, Stephen R. Forrest
  • Patent number: 6596134
    Abstract: A multicolor organic light emitting device employs vertically stacked layers of double heterostructure devices which are fabricated from organic compounds. The vertical stacked structure is formed on a glass base having a transparent coating of ITO or similar metal to provide a substrate. Deposited on the substrate is the vertical stacked arrangement of three double heterostructure devices, each fabricated from a suitable organic material. Stacking is implemented such that the double heterostructure with the longest wavelength is on the top of the stack. This constitutes the device emitting red light on the top with the device having the shortest wavelength, namely, the device emitting blue light, on the bottom of the stack. Located between the red and blue device structures is the green device structure.
    Type: Grant
    Filed: December 21, 1999
    Date of Patent: July 22, 2003
    Assignee: The Trustees of Princeton University
    Inventors: Stephen R. Forrest, Mark E. Thompson, Paul E. Burrows, Vladimir Bulovic, Gong Gu
  • Publication number: 20030124381
    Abstract: The present invention relates to efficient organic light emitting devices (OLEDs). More specifically, the present invention relates to white-emitting OLEDs, or WOLEDs. The devices of the present invention employ two emitters in a single emissive region to sufficiently cover the visible spectrum. White emission is achieved from two emitters in a single emissive region through the formation of an aggregate by one of the emissive centers. This allows the construction of simple, bright and efficient WOLEDs that exhibit a high color rendering index.
    Type: Application
    Filed: March 29, 2002
    Publication date: July 3, 2003
    Inventors: Mark E. Thompson, Jason Brooks, Vadim Adamovich, Stephen R. Forrest, Brian D'Andrade
  • Patent number: 6582838
    Abstract: Dopant compounds of Formula I below for use in organic light emitting devices (OLED's) as device elements capable of emitting light of wavelengths associated with saturated red emissions. OLEDs utilize device elements comprising the above compounds and display devices are based on those OLED's.
    Type: Grant
    Filed: October 9, 2001
    Date of Patent: June 24, 2003
    Assignees: The Trustees of Princeton University, The University of Southern California
    Inventors: Paul Burrows, Stephen R. Forrest, Mark E. Thompson
  • Patent number: 6579632
    Abstract: Organic light emitting devices are disclosed which are comprised of a heterostructure for producing electroluminescence wherein the heterostructure is comprised of an emissive layer containing a phosphorescent dopant compound.
    Type: Grant
    Filed: July 6, 2001
    Date of Patent: June 17, 2003
    Assignees: The Trustees of Princeton University, The University of Southern California
    Inventors: Mark E. Thompson, Yujian You, Andrei Shoustikov, Scott Sibley, Paul E. Burrows, Stephen R. Forrest
  • Patent number: 6580027
    Abstract: Organic photosensitive optoelectronic devices are disclosed. The devises comprise photoconductive organic thin films in a heterostructure, which include an exciton blocking layer to enhance device efficiency. The use of fullerenes in the electron conducting layer has lead to devices with high efficiency. Single heterostructure, stacked and wave-guide type embodiments are disclosed. Devices having multilayer structures and an exciton blocking layer are also disclosed. Guidelines for selection of exciton blocking layers are provided.
    Type: Grant
    Filed: June 11, 2001
    Date of Patent: June 17, 2003
    Assignee: Trustees of Princeton University
    Inventors: Stephen R. Forrest, Peter Peumans
  • Patent number: 6573651
    Abstract: The present invention is directed to simplified OLED structures comprising an anode layer, a hole injecting layer (HIL) in direct contact with the anode layer, an emissive organic electron transporting layer (ETL) in direct contact with the hole injecting layer, and a cathode layer in direct contact with the emissive organic electron transporting layer. The hole injecting material used in the hole injecting layer is characterized, in particular, as being an organic material having an ionization potential that is not more than about 0.7 eV greater than the ionization potential of the material used for the anode layer. The emissive organic electron transporting layer comprises an organic electron transporting material and an organic hole-trapping emissive material, for example, an organic phosphorescent material that produces emission from a triplet excited state of an organic molecule.
    Type: Grant
    Filed: December 18, 2000
    Date of Patent: June 3, 2003
    Assignee: The Trustees of Princeton University
    Inventors: Chihaya Adachi, Marc A. Baldo, Stephen R. Forrest
  • Publication number: 20030087471
    Abstract: A method of fabricating an organic device is provided. A first layer is deposited over a substrate through a mask by a first process that results in the first layer having a first area of coverage. A second layer is then deposited over the substrate through the mask by a second process that results in the second layer having a second area of coverage that is different from the first area of coverage.
    Type: Application
    Filed: September 4, 2002
    Publication date: May 8, 2003
    Inventors: Max Shtein, Stephen R. Forrest
  • Patent number: 6558736
    Abstract: Methods for preparing organic thin films on substrates, the method comprising the steps of providing a plurality of organic precursors in the vapor phase, and reacting the plurality or organic precursors at a sub-atmospheric pressure. Also included are thin films made by such a method and apparatuses used to conduct such a method. The method is well-suited to the formation of organic light emitting devices and other display-related technologies.
    Type: Grant
    Filed: April 19, 2002
    Date of Patent: May 6, 2003
    Assignee: The Trustees of Princeton University
    Inventors: Stephen R. Forrest, Paul E. Burrows, Vladimir S. Ban
  • Patent number: 6548956
    Abstract: A multicolor organic light emitting device employs vertically stacked layers of double heterostructure devices which are fabricated from organic compounds. The vertical stacked structure is formed on a glass base having a transparent coating of ITO or similar metal to provide a substrate. Deposited on the substrate is the vertical stacked arrangement of three double heterostructure devices, each fabricated from a suitable organic material. Stacking is implemented such that the double heterostructure with the longest wavelength is on the top of the stack. This constitutes the device emitting red light on the top with the device having the shortest wavelength, namely, the device emitting blue light, on the bottom of the stack. Located between the red and blue device structures is the green device structure.
    Type: Grant
    Filed: December 1, 2000
    Date of Patent: April 15, 2003
    Assignee: The Trustees of Princeton University
    Inventors: Stephen R. Forrest, Mark E. Thompson, Paul E. Burrows, Vladimir Bulovic, Gong Gu
  • Publication number: 20030068528
    Abstract: Light emitting devices having blocking layers comprising one or more metal complexes are provided. The blocking layers may serve to block electrons, holes, and/or excitons. Preferably, the devices further comprise a separate emissive layer in which charge and/or excitons are confined. Metal complexes suitable for blocking layers can be selected by comparison of HOMO and LUMO energy levels of materials comprising adjacent layers in devices of the present invention.
    Type: Application
    Filed: August 23, 2002
    Publication date: April 10, 2003
    Inventors: Mark E. Thompson, Xiaofan Ren, Vadim Adamovich, Steven R. Cordero, Brian Wendell D'Andrade, Bert Alleyne, Stephen R. Forrest
  • Publication number: 20030059647
    Abstract: Light emitting devices having charge transporting layers comprising one or more metal complexes are provided. More particularly, devices include hole transporting layers comprising at least one metal complex are disclosed. The present devices can further comprise an electron blocking layer for improved efficiency.
    Type: Application
    Filed: August 23, 2002
    Publication date: March 27, 2003
    Inventors: Mark E. Thompson, Xiaofan Ren, Peter Djurovich, Haiping Hong, Stephen R. Forrest, Chihaya Adachi
  • Publication number: 20030054586
    Abstract: A method of employing organic vapor phase deposition to fabricate a polycrystalline organic thin film is described. By employing organic vapor phase deposition at moderate deposition chamber pressures and substrate temperatures, a polycrystalline organic thin film results having significantly larger purity and grain size than what is achievable by vacuum thermal evaporation. These polycrystalline organic thin films may be employed in a variety of applications, including, for example, organic light emitting devices, photovoltaic cells, photodetectors, lasers, and thin film transistors.
    Type: Application
    Filed: September 4, 2001
    Publication date: March 20, 2003
    Inventors: Max Shtein, Stephen R. Forrest
  • Publication number: 20030042846
    Abstract: The present invention generally relates to organic photosensitive optoelectronic devices. More specifically, it is directed to organic photovoltaic devices, e.g., organic solar cells. Further, it is directed to an optimized organic solar cell comprising multiple stacked subcells in series. High power conversion efficiency are achieved by fabrication of a photovoltaic cell comprising multiple stacked subcells with thickness optimization and employing an electron blocking layer.
    Type: Application
    Filed: September 6, 2001
    Publication date: March 6, 2003
    Inventors: Stephen R. Forrest, Aharon Yakimov
  • Patent number: 6515298
    Abstract: Organic light emitting devices are described wherein the emissive layer comprises a host material containing a fluorescent or phosphorescent emissive molecule, which molecule is adapted to luminesce when a voltage is applied across the heterostructure, wherein an intersystem crossing molecule of optical absorption spectrum matched to the emission spectrum of the emissive molecule enhances emission efficiency.
    Type: Grant
    Filed: July 25, 2001
    Date of Patent: February 4, 2003
    Assignees: The Trustees of Princeton University, The University of Southern California
    Inventors: Stephen R. Forrest, Mark E. Thompson, Marc A. Baldo
  • Publication number: 20030020399
    Abstract: A microlens array for a light emitting device is disclosed. The light emitting device includes a plurality of OLEDs, each OLED having a minimum planar dimension. The array includes a plurality of microlenses, each of which has a minimum planar dimension and a maximum planar dimension. The minimum planar dimensions of the microlenses are larger than the maximum wavelength of visible light emitted from the OLEDs. The maximum planar dimensions of the microlenses are smaller than the smallest minimum planar dimension of any of the OLEDs.
    Type: Application
    Filed: July 9, 2002
    Publication date: January 30, 2003
    Inventors: Sven Moller, Stephen R. Forrest
  • Publication number: 20030017361
    Abstract: Organic light emitting devices are described wherein the emissive layer comprises a host material containing an emissive molecule, which molecule is adapted to luminesce when a voltage is applied across the heterostructure, and the emissive molecule is selected from the group of phosphorescent organometallic complexes, including cyclometallated platinum, iridium and osmium complexes. The organic light emitting devices optionally contain an exciton blocking layer. Furthermore, improved electroluminescent efficiency in organic light emitting devices is obtained with an emitter layer comprising organometallic complexes of transition metals of formula L2MX, wherein L and X are distinct bidentate ligands. Compounds of this formula can be synthesized more facilely than in previous approaches and synthetic options allow insertion of fluorescent molecules into a phosphorescent complex, ligands to fine tune the color of emission, and ligands to trap carriers.
    Type: Application
    Filed: June 13, 2002
    Publication date: January 23, 2003
    Inventors: Mark E. Thompson, Peter Djurovich, Sergey Lamansky, Drew Murphy, Raymond Kwong, Feras Abdel-Razzaq, Stephen R. Forrest, Marc A. Baldo, Paul E. Burrows
  • Publication number: 20030007719
    Abstract: A photonic integrated circuit comprises a first waveguide with a first mode of light propagating therein and a second waveguide with a second mode of light propagating therein. The first and second modes of light have different effective indices of refraction. A taper formed in the second waveguide facilitates communication of light between waveguides. Each of the first and second waveguides operate to perform at least one of the generating light, detecting light, and transporting light.
    Type: Application
    Filed: June 4, 2002
    Publication date: January 9, 2003
    Inventors: Stephen R. Forrest, Milind R. Gokhale, Fengnian Xia, Vinod Menon
  • Publication number: 20020197462
    Abstract: Organic photosensitive optoelectronic devices (“OPODs”) are disclosed which include an exciton blocking layer to enhance device efficiency. Single heterostructure, stacked and wave-guide type embodiments are disclosed. Photodetector OPODs having multilayer structures and an exciton blocking layer are also disclosed. Guidelines for selection of exciton blocking layers are provided.
    Type: Application
    Filed: August 5, 2002
    Publication date: December 26, 2002
    Inventors: Stephen R. Forrest, Vladimir Bulovic, Peter Peumans
  • Publication number: 20020197511
    Abstract: The present invention relates to efficient organic light emitting devices (OLEDs) doped with multiple light-emitting dopants, at least one dopant comprising a phosphorescent emitter, in a thin film emissive layer or layers. The present invention is directed to an efficient phosphorescent organic light emitting device utilizing a plurality of emissive dopants in an emissive region, wherein at least one of the dopants is a phosphorescent material. Thus, the present invention provides an organic light emitting device comprising an emissive region, wherein the emissive region comprises a host material, and a plurality of emissive dopants, wherein the emissive region is comprised of a plurality of bands and each emissive dopant is doped into a separate band within the emissive region, and wherein at least one of the emissive dopants emits light by phosphorescence.
    Type: Application
    Filed: May 13, 2002
    Publication date: December 26, 2002
    Inventors: Brian D'Andrade, Mark E. Thompson, Stephen R. Forrest